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Mass point analytical models were applied.
At this point, analytical participants in the traditional group remain distant to CAS usage on account of the fact that procedural skills might be negatively affected.
However, maps can be made showing the spatial distribution of the unknown composition and then point analytical methods, such as x-ray fluorescence, Raman, or reflectance mid-IR spectroscopies, can be employed to help in the identification.
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Existence and uniqueness conditions are presented for the solution of the fixed-point analytical model.
For such scenarios, we propose an extended fixed-point analytical model to model TCP throughput in AQM-controlled wireless links in the current study.
Overall results exhibit a remarkable level of agreement in the aggregate TCP throughput between simulations and the fixed-point analytical model especially for B equals 20 or 30.
A fixed-point analytical model is proposed to obtain the aggregate TCP throughput attained at this wireless link and the model is validated by ns-3 simulations.
In the next section, we develop a fixed-point analytical model of the generic DRWL by means of which we evaluate the performance of the specific QAWLA scheme to be used in the numerical examples.
A novel fixed-point analytical model is developed to accommodate discontinuous wireless packet loss rate and queue service rate of this dual-regime queuing system which is validated with extensive ns-3 simulations.
Fig. 5 The empirical queue occupancy PMF u k for the scenario with i d x=2 for varying B∈{10,20,30}, all having the same fixed-point solution with a queue occupancy level of 3.9049 packets Table 3 Aggregate TCP throughput T obtained with ns-3 simulations and the fixed-point analytical model for B=10.
The proposed fixed-point analytical model has a computational complexity low enough to enable the exploration of the multi-dimensional problem space spanned by the number of TCP flows, the number of MCSs, and varying signal-to-noise ratio (SNR) levels, which would not be feasible with a study based solely on simulations.
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